JP6436486B2 - Telescopic shaft and steering device - Google Patents

Telescopic shaft and steering device Download PDF

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Publication number
JP6436486B2
JP6436486B2 JP2014262872A JP2014262872A JP6436486B2 JP 6436486 B2 JP6436486 B2 JP 6436486B2 JP 2014262872 A JP2014262872 A JP 2014262872A JP 2014262872 A JP2014262872 A JP 2014262872A JP 6436486 B2 JP6436486 B2 JP 6436486B2
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Japan
Prior art keywords
shaft
pair
inner shaft
buffer
pin
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JP2014262872A
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JP2016121786A (en
Inventor
太司 上村
太司 上村
潔 岩瀬
潔 岩瀬
尾崎 光晴
光晴 尾崎
大樹 矢野
大樹 矢野
本多 一秀
一秀 本多
康孝 福本
康孝 福本
修 本田
修 本田
藤本 尚樹
尚樹 藤本
前田 隆司
隆司 前田
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JTEKT Corp
Toyota Motor Corp
Koyo Machine Industries Co Ltd
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JTEKT Corp
Toyota Motor Corp
Koyo Machine Industries Co Ltd
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Application filed by JTEKT Corp, Toyota Motor Corp, Koyo Machine Industries Co Ltd filed Critical JTEKT Corp
Priority to JP2014262872A priority Critical patent/JP6436486B2/en
Priority to EP15202338.8A priority patent/EP3037322B8/en
Priority to CN201510977454.9A priority patent/CN105730498B/en
Priority to US14/981,091 priority patent/US9707991B2/en
Publication of JP2016121786A publication Critical patent/JP2016121786A/en
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Publication of JP6436486B2 publication Critical patent/JP6436486B2/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B62LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
    • B62DMOTOR VEHICLES; TRAILERS
    • B62D1/00Steering controls, i.e. means for initiating a change of direction of the vehicle
    • B62D1/02Steering controls, i.e. means for initiating a change of direction of the vehicle vehicle-mounted
    • B62D1/16Steering columns
    • B62D1/20Connecting steering column to steering gear
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B62LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
    • B62DMOTOR VEHICLES; TRAILERS
    • B62D1/00Steering controls, i.e. means for initiating a change of direction of the vehicle
    • B62D1/02Steering controls, i.e. means for initiating a change of direction of the vehicle vehicle-mounted
    • B62D1/16Steering columns
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C29/00Bearings for parts moving only linearly
    • F16C29/04Ball or roller bearings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C3/00Shafts; Axles; Cranks; Eccentrics
    • F16C3/02Shafts; Axles
    • F16C3/03Shafts; Axles telescopic
    • F16C3/035Shafts; Axles telescopic with built-in bearings
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D3/00Yielding couplings, i.e. with means permitting movement between the connected parts during the drive
    • F16D3/02Yielding couplings, i.e. with means permitting movement between the connected parts during the drive adapted to specific functions
    • F16D3/06Yielding couplings, i.e. with means permitting movement between the connected parts during the drive adapted to specific functions specially adapted to allow axial displacement
    • F16D3/065Yielding couplings, i.e. with means permitting movement between the connected parts during the drive adapted to specific functions specially adapted to allow axial displacement by means of rolling elements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16CSHAFTS; FLEXIBLE SHAFTS; ELEMENTS OR CRANKSHAFT MECHANISMS; ROTARY BODIES OTHER THAN GEARING ELEMENTS; BEARINGS
    • F16C2326/00Articles relating to transporting
    • F16C2326/20Land vehicles
    • F16C2326/24Steering systems, e.g. steering rods or columns

Description

本発明は伸縮軸およびステアリング装置に関する。   The present invention relates to a telescopic shaft and a steering device.

特許文献1では、インナーシャフトの先端部に配置されたワッシャと各凹溝に配置されたボールとの間に、それぞれコイルばねを配置する構造の伸縮軸が提案されている。
特許文献2の伸縮軸では、雄軸の軸端の小径軸部に、可動ワッシャと、ばね板と、固定ワッシャとをこの順で外嵌している。小径軸部の軸端がかしめ加工され、該かしめ加工部が固定ワッシャを係止している。ばね板は固定ワッシャによって受けられ、可動ワッシャを付勢している。可動ワッシャおよびばね板が、ボールとの衝突を緩和する緩衝要素を構成している。
Patent Document 1 proposes a telescopic shaft having a structure in which a coil spring is disposed between a washer disposed at a tip portion of an inner shaft and a ball disposed in each concave groove.
In the telescopic shaft of Patent Document 2, a movable washer, a spring plate, and a fixed washer are externally fitted in this order on the small-diameter shaft portion of the shaft end of the male shaft. The shaft end of the small-diameter shaft portion is caulked, and the caulked portion locks the fixed washer. The spring plate is received by a fixed washer and biases the movable washer. The movable washer and the spring plate constitute a cushioning element that alleviates the collision with the ball.

特開2010−053943号公報JP 2010-053943 A 特開2009−197818号公報JP 2009-197818 A

特許文献1では、伸縮軸の組立時において、互いに独立した複数のコイルばねを、それぞれ対応する凹溝に対して、脱落しないようにして個別に組み付ける必要がある。このため、組立性が悪い。
特許文献2では、伸縮軸の組立時において、緩衝要素としての複数の部品(板ばねおよび可動ワッシャ)を個別に組み付ける必要があるので、組立性が悪い。
In Patent Document 1, when assembling the telescopic shaft, it is necessary to individually assemble a plurality of coil springs independent from each other so as not to drop off in the corresponding concave grooves. For this reason, assembly property is bad.
In Patent Document 2, when assembling the telescopic shaft, it is necessary to individually assemble a plurality of parts (plate springs and movable washers) as buffer elements, so that the assemblability is poor.

本発明の目的は、組立性の良い伸縮軸およびこれを含むステアリング装置を提供することである。   An object of the present invention is to provide a telescopic shaft with good assemblability and a steering device including the same.

請求項1の発明は、外周面(10a)に軸方向(X)に延び軸直角方向(R)に対向する一対の凹溝(11)が形成された内軸(10)と、内周面(20a)に軸方向に延び軸直角方向に対向する一対の凹溝(21)が形成された外軸(20)と、前記内軸および前記外軸の対応する凹溝間にそれぞれ配置され軸方向に並ぶ列をなす複数の転動体(30)と、前記外軸に対する前記内軸のストロークエンドにおいて対応する列の端部の転動体(30e)が前記内軸の対応する凹溝から脱落することをそれぞれ規制する一対のストッパ(41)と、前記一対のストッパのそれぞれと対応する列の端部の転動体との間にそれぞれ介在する一対の緩衝体(51)と前記一対の緩衝体間を連結する連結部(52)とを一体に含む緩衝体ユニット(50)と、前記内軸の軸直角方向孔(12)に挿通保持されたピン(40)と、を備え、前記ピンの一対の端部が前記一対の緩衝体のピン挿通孔にそれぞれ挿通された状態で、前記ピンが、前記緩衝体ユニットを前記内軸に止定する止定部材として機能し、前記ピンの一対の端部が、前記一対のストッパ(41)を構成している伸縮軸(1)を提供する。 The invention according to claim 1 includes an inner shaft (10) having a pair of concave grooves (11) formed in the outer peripheral surface (10a) extending in the axial direction (X) and facing the direction perpendicular to the axis (R), and the inner peripheral surface An outer shaft (20) formed with a pair of concave grooves (21) extending in the axial direction on (20a) and opposed in the direction perpendicular to the axis, and a shaft disposed between the corresponding concave grooves of the inner shaft and the outer shaft, respectively. A plurality of rolling elements (30) forming a row aligned in the direction and a rolling element (30e) at the end of the corresponding row at the stroke end of the inner shaft with respect to the outer shaft drop off from the corresponding concave groove of the inner shaft. A pair of buffer bodies (51 ) and a pair of buffer bodies respectively interposed between the pair of stoppers (41 ) for restricting the above and the rolling elements at the ends of the corresponding rows of the pair of stoppers. A shock absorber unit (5 ) integrally including a connecting portion (52 ) for connecting between bodies 0) and a pin (40) inserted and held in the axially perpendicular hole (12) of the inner shaft, and the pair of end portions of the pin are respectively inserted into the pin insertion holes of the pair of buffer bodies. In this state, the pin functions as a fixing member for fixing the buffer unit to the inner shaft, and a pair of end portions of the pin constitutes the pair of stoppers (41). Provide ( 1) .

請求項2のように、前記緩衝体ユニットは、当該緩衝体ユニットを前記内軸に仮保持するように前記内軸に係合する係合部(53)を含んでいてもよい。
請求項3のように、前記連結部は、前記内軸の軸端面(13)に対向し、前記係合部は、前記連結部から延設されていてもよい
According to a second aspect of the present invention, the buffer unit may include an engaging portion (53) that engages with the inner shaft so as to temporarily hold the buffer unit on the inner shaft.
According to a third aspect of the present invention, the connecting portion may be opposed to the shaft end surface (13 ) of the inner shaft, and the engaging portion may be extended from the connecting portion .

請求項の発明は、前記伸縮軸により構成されたインターミディエイトシャフト(100)を含むステアリング装置(60)を提供する。 The invention of claim 4 provides a steering device (60) including an intermediate shaft (100) constituted by the telescopic shaft.

請求項1の発明によれば、組立時において、一対の緩衝体を一体の緩衝体ユニットとして一括して内軸に組み付けることができるので、組立性が向上する。特に、緩衝体ユニットを内軸に止定する止定部材としてのピンを内軸に取り付けることによって、内軸に対する一対のストッパの取付が完了するので、組立性が向上する。
また、請求項2の発明によれば、組立時において、緩衝体ユニットを内軸に固定する前に、当該緩衝体ユニットを内軸に仮保持することができるので、組立性が向上する。
また、請求項3の発明によれば、組立時において、緩衝体ユニットを軸端面側から内軸に仮保持することができ、組立性が向上する。
According to the first aspect of the present invention, at the time of assembly, the pair of shock absorbers can be collectively assembled to the inner shaft as a single shock absorber unit, so that the assemblability is improved. In particular, mounting a pair of stoppers to the inner shaft is completed by attaching a pin as a locking member for fixing the buffer unit to the inner shaft to the inner shaft, thereby improving the assemblability.
According to the second aspect of the present invention, since the buffer unit can be temporarily held on the inner shaft before the buffer unit is fixed to the inner shaft during assembly, the assemblability is improved.
According to the invention of claim 3, the buffer unit can be temporarily held from the shaft end surface side to the inner shaft during assembly, and the assemblability is improved.

た、請求項の発明によれば、組立性に優れたステアリング装置を提供することができる。 Also, according to the invention of claim 4, it is possible to provide an excellent steering device assembly.

本発明の第1実施形態の伸縮軸の要部の断面図である。It is sectional drawing of the principal part of the expansion-contraction shaft of 1st Embodiment of this invention. 内軸とストッパ機能を有するピンと緩衝体ユニットとの分解斜視図である。It is a disassembled perspective view of the pin and buffer body unit which have an inner shaft and a stopper function. 緩衝体ユニットが仮保持された内軸とピンとの分解斜視図である。It is a disassembled perspective view of the inner shaft and pin which temporarily hold | maintained the buffer unit. 緩衝時の伸縮軸の要部の拡大断面図である。It is an expanded sectional view of the principal part of the expansion-contraction shaft at the time of buffering. 本発明の第1参考形態の伸縮軸の要部の断面図である。It is sectional drawing of the principal part of the expansion-contraction shaft of the 1st reference form of this invention. 1参考形態において、内軸と、緩衝体ユニットと、ストッパ機能を有する止定部材との分解斜視図である。In 1st reference form, it is a disassembled perspective view of an inner shaft, a buffer unit, and a fixing member having a stopper function. 本発明の第2参考形態の伸縮軸の要部の断面図である。It is sectional drawing of the principal part of the expansion-contraction shaft of the 2nd reference form of this invention. 本発明の第実施形態乃至第3参考形態に係るステアリング装置の概略図であり、ステアリング装置のインターミディエイトシャフトに伸縮軸が適用されている。It is the schematic of the steering apparatus which concerns on 2nd Embodiment thru | or 3rd reference form of this invention, and the expansion-contraction shaft is applied to the intermediate shaft of a steering apparatus.

本発明の実施形態を添付図面を参照しつつ説明する。
(第1実施形態)
図1は本発明の第1実施形態の伸縮軸の一部破断正面図である。図1に示すように、伸縮軸1は、外周面10aに軸方向Xに延びる凹溝11が形成された内軸10と、内周面20aに軸方向Xに延びる凹溝21が形成された外軸20とを備える。また、伸縮軸1は、内軸10および外軸20の凹溝11,21間に配置され、軸方向Xに並ぶ列をなす複数の転動体30を備える。転動体30は、例えば金属製のボールである。
Embodiments of the present invention will be described with reference to the accompanying drawings.
(First embodiment)
FIG. 1 is a partially broken front view of a telescopic shaft according to a first embodiment of the present invention. As shown in FIG. 1, the telescopic shaft 1 has an inner shaft 10 in which a groove 11 extending in the axial direction X is formed on the outer peripheral surface 10a, and a groove 21 that extends in the axial direction X on the inner peripheral surface 20a. And an outer shaft 20. The telescopic shaft 1 includes a plurality of rolling elements 30 that are arranged between the concave grooves 11 and 21 of the inner shaft 10 and the outer shaft 20 and form a row aligned in the axial direction X. The rolling element 30 is, for example, a metal ball.

内軸10は、軸直角方向Rに対向する一対の凹溝11を設けており、外軸20は、軸直角方向Rに対向する一対の凹溝21を設けている。内軸10の各凹溝11と外軸20の対応する凹溝21との間に、それぞれ列をなす複数の転動体30が介在している。
分解斜視図である図2に示すように、内軸10は、両端が一対の凹溝11の底に開口するように軸直角方向Rに延びる軸直角方向孔12を備えている。図1に示すように、軸直角方向孔12には、ピン40が挿通保持されている。具体的には、ピン40は、軸直角方向孔12に圧入されている。ピン40の一対の端部が、軸直角方向孔12から対応する凹溝11内にそれぞれ突出して、一対のストッパ41を構成している。
The inner shaft 10 is provided with a pair of concave grooves 11 facing the direction perpendicular to the axis R, and the outer shaft 20 is provided with a pair of concave grooves 21 facing the direction perpendicular to the axis R. Between each concave groove 11 of the inner shaft 10 and a corresponding concave groove 21 of the outer shaft 20, a plurality of rolling elements 30 each in a row are interposed.
As shown in FIG. 2, which is an exploded perspective view, the inner shaft 10 includes an axially perpendicular hole 12 that extends in the axially perpendicular direction R so that both ends open to the bottom of the pair of concave grooves 11. As shown in FIG. 1, a pin 40 is inserted and held in the axially perpendicular hole 12. Specifically, the pin 40 is press-fitted into the axially perpendicular hole 12. A pair of end portions of the pin 40 project from the axially perpendicular hole 12 into the corresponding groove 11 to constitute a pair of stoppers 41.

図1において、外軸20に対して内軸10が伸び側(図1において右側)のストロークエンドに達するときに、図4に示すように、ストッパ41によって、列の端部の転動体30eが内軸10の対応する凹溝11から脱落することが規制される。ストッパ41は、緩衝体51を介して衝撃を吸収しながら列の端部の転動体30eを受ける。
具体的には、伸縮軸1は、図2に示すような一対の緩衝体51を含む緩衝体ユニット50を備える。緩衝体ユニット50は、一対の緩衝体51と、一対の緩衝体51間を連結する連結部52と、連結部52の中間部から連結部52と異なる方向に互いに反対側に延びる一対の係合部としての係合腕53とを一体に含むユニットである。
In FIG. 1, when the inner shaft 10 reaches the stroke end on the extension side (right side in FIG. 1) with respect to the outer shaft 20, as shown in FIG. It is restricted that the inner shaft 10 falls out of the corresponding groove 11. The stopper 41 receives the rolling elements 30e at the end of the row while absorbing the shock via the buffer 51.
Specifically, the telescopic shaft 1 includes a buffer unit 50 including a pair of buffer bodies 51 as shown in FIG. The shock absorber unit 50 includes a pair of shock absorbers 51, a connecting portion 52 that connects the pair of shock absorbers 51, and a pair of engagements that extend from the intermediate portion of the connecting portion 52 in opposite directions to the connecting portion 52. This unit includes an engaging arm 53 as a unit.

緩衝体ユニット50は、単一の材料で一体に形成されている。緩衝体ユニット50は、弾性体で形成されている。緩衝体ユニット50は、樹脂、ゴムまたは金属で形成されている。
図1に示すように、各緩衝体51は、各ストッパ41と対応する列の端部の転動体30eとの間に介在している。連結部52は、内軸10の軸端面13に対向して受けられており、例えば曲げ変形等の弾性変形が可能である。
The buffer unit 50 is integrally formed of a single material. The buffer unit 50 is formed of an elastic body. The buffer unit 50 is made of resin, rubber or metal.
As shown in FIG. 1, each buffer 51 is interposed between each stopper 41 and the rolling element 30 e at the end of the corresponding row. The connecting portion 52 is received so as to face the shaft end surface 13 of the inner shaft 10 and can be elastically deformed such as bending deformation.

各緩衝体51は、連結部52の両端から軸方向Xに延びる円柱状の部材である。各緩衝体51は、対応する凹溝11,21間に配置される。各緩衝体51は、ピン40の対応する端部(ストッパ41)を挿通させるピン挿通孔51aを有している。
また、緩衝体51は、対応する列の端部の転動体30eと対向する端面51bを含む。図4に示すように、緩衝体51の端面51bは、内軸10の伸び側のストロークエンドにおいて、対応する列の端部の転動体30eと当接する。
Each buffer 51 is a columnar member extending in the axial direction X from both ends of the connecting portion 52. Each buffer 51 is disposed between the corresponding concave grooves 11 and 21. Each buffer body 51 has a pin insertion hole 51a through which a corresponding end portion (stopper 41) of the pin 40 is inserted.
Further, the buffer body 51 includes an end face 51b facing the rolling elements 30e at the end of the corresponding row. As shown in FIG. 4, the end face 51 b of the buffer body 51 comes into contact with the rolling elements 30 e at the end of the corresponding row at the stroke end on the extension side of the inner shaft 10.

一対の係合腕53は、それぞれ略L字形をなすフック状のものである。一対の係合腕53は、弾性的に拡開された状態で、その復元力によって、内軸10の外周面10aの軸直角方向対向部分を弾性的に挟持する。
図3に示すように、伸縮軸1の組立時において、ピン40を内軸10に組み付ける前段階で、一対の係合腕53が、緩衝体ユニット50を内軸10に仮保持するように、内軸10の外周面10aに弾性的に係合する。
The pair of engaging arms 53 are hook-shaped having a substantially L shape. The pair of engaging arms 53 are elastically expanded and elastically sandwich the axially perpendicular portion of the outer peripheral surface 10a of the inner shaft 10 by its restoring force.
As shown in FIG. 3, when the telescopic shaft 1 is assembled, the pair of engaging arms 53 temporarily hold the shock absorber unit 50 on the inner shaft 10 before the pin 40 is assembled to the inner shaft 10. The inner shaft 10 is elastically engaged with the outer peripheral surface 10a.

緩衝体ユニット50が内軸10に仮保持された状態で、ピン40が、一対の緩衝体51のピン挿通孔51aを挿通するようにして内軸10の軸直角方向孔12(図2参照)に圧入されることになる。
図1に示すように、ピン40の一対の端部(ストッパ41)が一対の緩衝体51のピン挿通孔51aにそれぞれ挿通された状態で、ピン40が、緩衝体ユニット50を内軸10に止定する止定部材として機能する。
In a state where the buffer unit 50 is temporarily held on the inner shaft 10, the pin 40 passes through the pin insertion holes 51 a of the pair of buffer bodies 51, and the axially perpendicular hole 12 of the inner shaft 10 (see FIG. 2). Will be press-fitted into.
As shown in FIG. 1, with the pair of end portions (stopper 41) of the pin 40 inserted through the pin insertion holes 51 a of the pair of shock absorbers 51, the pin 40 attaches the shock absorber unit 50 to the inner shaft 10. It functions as a stopping member for stopping.

一対の緩衝体51と、一対の緩衝体51間を連結し内軸10の軸端面13に対向する連結部52と、連結部52と平行なピン40とが、ボックス状(四角環状)を形成して、内軸10に止定されている。
本実施形態によれば、組立時において、図2、図3に示すように、一対の緩衝体51を一体の緩衝体ユニット50として一括して内軸に組み付けることができるので、組立性が向上する。
The pair of shock absorbers 51, the connecting portion 52 that connects the pair of shock absorbers 51 and faces the shaft end surface 13 of the inner shaft 10, and the pin 40 parallel to the connecting portion 52 form a box shape (square ring). The inner shaft 10 is fixed.
According to the present embodiment, at the time of assembly, as shown in FIGS. 2 and 3, the pair of buffer bodies 51 can be collectively assembled to the inner shaft as an integral buffer body unit 50, so that the assemblability is improved. To do.

また、組立時において、緩衝体ユニット50を内軸10に固定する前に、図3に示すように、係合腕53(係合部)を介して緩衝体ユニット50を内軸10に仮保持することができるので、組立性が向上する。
また、緩衝体ユニット50の連結部52が、内軸10の軸端面13に対向し、連結部52から係合腕53が延設されている。したがって、組立時において、緩衝体ユニット50を軸端面13側から内軸10に仮保持することができ、組立性が向上する。
In addition, before the buffer unit 50 is fixed to the inner shaft 10 during assembly, the buffer unit 50 is temporarily held on the inner shaft 10 via the engagement arm 53 (engagement portion) as shown in FIG. As a result, assemblability is improved.
Further, the connecting portion 52 of the shock absorber unit 50 faces the shaft end surface 13 of the inner shaft 10, and the engaging arm 53 extends from the connecting portion 52. Therefore, at the time of assembly, the buffer unit 50 can be temporarily held on the inner shaft 10 from the shaft end surface 13 side, and the assemblability is improved.

また、緩衝体ユニット50を内軸10に止定するために止定部材としてのピン40を内軸10に取り付けることによって、内軸10に対する一対のストッパ41の取付が完了するので、組立性が向上する。
また、緩衝体ユニット50において、一対の緩衝体51が、互いに他の緩衝体51が受ける衝突エネルギを連結部52を介して緩衝する。これにより、緩衝効果を高くすることができる。
Further, by attaching the pin 40 as a fixing member to the inner shaft 10 in order to fix the buffer unit 50 to the inner shaft 10, the mounting of the pair of stoppers 41 to the inner shaft 10 is completed, so that the assembling property is improved. improves.
In the buffer unit 50, the pair of buffer bodies 51 buffers the collision energy received by the other buffer bodies 51 via the connecting portion 52. Thereby, a buffer effect can be made high.

仮に、内軸の伸び側のストロークエンドにおいて(すなわち、伸縮軸の伸切り状態において)、ピンが列の端部の転動体を直接受ける場合、転動体の転動がピンによって規制される。このため、伸縮軸が伸切り状態でロックされたり、伸縮軸の伸縮荷重が増大したりするおそれがある。これに対して、本実施形態では、ストッパ41と列の端部の転動体30eとの間に緩衝体51を介在させているので、伸切り時における前記ロックの発生や前記伸縮荷重の増大を抑制することができる。
(第1参考形態)
図5は本発明の第1参考形態の伸縮軸1Sの要部の断面図であり、図6は、内軸10Sと、緩衝体ユニット50Sと、ストッパ機能を有する止定部材70との分解斜視図である。
If the pins directly receive the rolling elements at the end of the row at the stroke end on the extension side of the inner shaft (that is, in the extended state of the telescopic shaft), the rolling of the rolling elements is restricted by the pins. For this reason, there exists a possibility that an expansion-contraction shaft may be locked in an extended state, or the expansion-contraction load of an expansion-contraction shaft may increase. On the other hand, in the present embodiment, since the buffer body 51 is interposed between the stopper 41 and the rolling elements 30e at the end of the row, the occurrence of the lock at the time of stretching and the increase of the expansion / contraction load are prevented. Can be suppressed.
(First reference form)
FIG. 5 is a cross-sectional view of the main part of the telescopic shaft 1S of the first reference embodiment of the present invention, and FIG. 6 is an exploded perspective view of the inner shaft 10S, the buffer unit 50S, and a fixing member 70 having a stopper function. FIG.

図5および図6に示すように、内軸10Sの軸端面13Sに、軸方向Xに突出する筒状突起14が形成されている。緩衝体ユニット50Sと止定部材70とがこの順で、筒状突起14の外周に嵌合される。
緩衝体ユニット50Sは、内軸10Sの各凹溝11に収容される略円柱状の一対の緩衝体51Sと、一対の緩衝体51S間を連結する板状の連結部52Sとを含む。連結部52Sは、筒状突起14の外周に嵌合される嵌合孔52Saを有している。
As shown in FIGS. 5 and 6, a cylindrical protrusion 14 protruding in the axial direction X is formed on the shaft end surface 13 </ b> S of the inner shaft 10 </ b> S. The buffer unit 50S and the fixing member 70 are fitted to the outer periphery of the cylindrical protrusion 14 in this order.
The shock absorber unit 50S includes a pair of substantially cylindrical shock absorbers 51S accommodated in each concave groove 11 of the inner shaft 10S, and a plate-like connecting portion 52S that connects the pair of shock absorbers 51S. The connecting portion 52S has a fitting hole 52Sa that is fitted to the outer periphery of the cylindrical protrusion 14.

止定部材70は、筒状突起14の外周に嵌合される嵌合孔71を有する例えば略矩形の本体部72と、本体部72の一対の対向縁部にそれぞれ設けられた一対の突起からなるストッパ73とを備えている。各ストッパ73は、対応する緩衝体51Sを介して、対応する列の端部の転動体30eを受ける。
図5に示すように、筒状突起14の端縁の一部が、軸直角方向外方へ拡がるようにして、止定部材70の本体部72上にかしめ付けられた、かしめ部14aを形成している。この状態で、止定部材70が、緩衝体ユニット50Sの連結部52Sを内軸10Sの軸端面13Sに押圧している。これにより、止定部材70が、緩衝体ユニット50Sを内軸10Sに止定する機能を果たしている。
The fixing member 70 includes, for example, a substantially rectangular main body 72 having a fitting hole 71 fitted to the outer periphery of the cylindrical protrusion 14, and a pair of protrusions provided on a pair of opposing edges of the main body 72. A stopper 73 is provided. Each stopper 73 receives the rolling element 30e at the end of the corresponding row via the corresponding buffer 51S.
As shown in FIG. 5, a caulking portion 14 a is formed that is caulked on the main body portion 72 of the fixing member 70 so that a part of the edge of the cylindrical protrusion 14 extends outward in the direction perpendicular to the axis. doing. In this state, the fixing member 70 presses the connecting portion 52S of the buffer unit 50S against the shaft end surface 13S of the inner shaft 10S. Thereby, the fixing member 70 fulfill | performs the function which fixes the buffer unit 50S to the inner shaft 10S.

図5、図6の第1参考形態の構成要素において、図1、図2の第1実施形態の構成要素と同じ構成要素には、図1、図2の第1実施形態の構成要素の参照符号と同じ参照符号を付してある。
1参考形態によれば、組立時において、一対の緩衝体51Sを一体の緩衝体ユニット50Sとして一括して内軸10Sに組み付けることができるので、組立性が向上する。また、緩衝体ユニット50Sを内軸10Sに止定するために止定部材70を内軸10Sに取り付けることによって、内軸10Sに対する一対のストッパ73の取付が完了するので、組立性が向上する。
(第2参考形態)
図7は本発明の第2参考形態の伸縮軸1Tを示している。図7の第2参考形態が図5の第1参考形態と主に異なるのは、下記である。すなわち、内軸10Tの軸端面13Tに、ねじ孔15が形成されている。
5, the components of the first referential embodiment of FIG. 6, FIG. 1, the same components as those of the first embodiment of FIG. 2, reference of the components of the first embodiment of FIG. 1, FIG. 2 The same reference numerals as those in FIG.
According to the first reference embodiment, at the time of assembly, the pair of shock absorbers 51S can be collectively assembled to the inner shaft 10S as the integral shock absorber unit 50S, so that the assemblability is improved. Further, by attaching the fixing member 70 to the inner shaft 10S in order to fix the buffer unit 50S to the inner shaft 10S, the attachment of the pair of stoppers 73 to the inner shaft 10S is completed, so that the assemblability is improved.
( Second reference form)
FIG. 7 shows the telescopic shaft 1T of the second reference embodiment of the present invention. The second reference embodiment of FIG. 7 is mainly different from the first reference embodiment of FIG. That is, the screw hole 15 is formed in the shaft end surface 13T of the inner shaft 10T.

止定部材としてのボルト80のねじ軸81が、止定部材70の嵌合孔71と緩衝体ユニット50Sの連結部52Sの嵌合孔52Saとを挿通して、ねじ孔15に、ねじ込まれている。ボルト80の頭部82と内軸10Tの軸端面13Tとの間で、止定部材70の本体部72と緩衝体ユニット50Sの連結部52Sとが挟持され、これにより、緩衝体ユニット50Sが、内軸10Tに止定されている。   The screw shaft 81 of the bolt 80 as a fixing member is inserted into the fitting hole 71 of the fixing member 70 and the fitting hole 52Sa of the connecting portion 52S of the shock absorber unit 50S and is screwed into the screw hole 15. Yes. Between the head portion 82 of the bolt 80 and the shaft end surface 13T of the inner shaft 10T, the main body portion 72 of the fixing member 70 and the connecting portion 52S of the shock absorber unit 50S are sandwiched, whereby the shock absorber unit 50S is It is fixed to the inner shaft 10T.

図7の第2参考形態の構成要素において、図5の第1参考形態の構成要素と同じ構成要素には、図5の第1参考形態の構成要素の参照符号と同じ参照符号を付してある。
2参考形態によれば、組立時において、一対の緩衝体51Sを一体の緩衝体ユニット50Sとして一括して内軸10Tに組み付けることができるので、組立性が向上する。
なお、本第3実施形態において、止定部材70が、ボルト80の頭部82と一体に形成されていてもよい。その場合、構造を簡素化することができ、また、組立性を向上することができる。
(第実施形態乃至第3参考形態
実施形態、第1〜第2参考形態の伸縮軸は、図8に示すようなステアリング装置60のインターミディエイトシャフト100に適用されてもよい。
In the components of the second referential embodiment of FIG. 7, the same components as in the first referential embodiment of FIG. 5, denoted by the same reference numerals as the components of the first referential embodiment of FIG. 5 is there.
According to the second reference embodiment, at the time of assembly, the pair of shock absorbers 51S can be collectively assembled to the inner shaft 10T as the integral shock absorber unit 50S, so that the assemblability is improved.
In the third embodiment, the fixing member 70 may be formed integrally with the head portion 82 of the bolt 80. In that case, the structure can be simplified and the assemblability can be improved.
( Second Embodiment to Third Reference Embodiment )
The telescopic shafts of the first embodiment and the first to second reference embodiments may be applied to the intermediate shaft 100 of the steering device 60 as shown in FIG.

具体的には、ステアリング装置60は、一端にステアリングホイール61が連結されたステアリングシャフト62と、ピニオン軸63およびラック軸64を含むラックアンドピニオン機構からなり転舵輪65を転舵する転舵機構66と、ステアリングシャフト62とピニオン軸63との間に介在して操舵トルクを伝達するインターミディエイトシャフト100とを備えている。   Specifically, the steering device 60 includes a steering shaft 62 having a steering wheel 61 connected to one end thereof, a rack and pinion mechanism including a pinion shaft 63 and a rack shaft 64, and a steering mechanism 66 that steers the steered wheels 65. And an intermediate shaft 100 that is interposed between the steering shaft 62 and the pinion shaft 63 and transmits steering torque.

インターミディエイトシャフト100の一端が、自在継手67を介してステアリングシャフト62と連結される。インターミディエイトシャフト100の他端が、自在継手68を介してピニオン軸63と連結される。インターミディエイトシャフト100を構成する伸縮軸の内軸および外軸の何れか一方がアッパー側となり、他方がロアー側となる。
本実施形態によれば、インターミディエイトシャフト100に関する打音による騒音を低減することができる。
One end of the intermediate shaft 100 is connected to the steering shaft 62 via a universal joint 67. The other end of the intermediate shaft 100 is connected to the pinion shaft 63 via a universal joint 68. One of the inner shaft and the outer shaft of the telescopic shaft constituting the intermediate shaft 100 is the upper side, and the other is the lower side.
According to the present embodiment, it is possible to reduce noise caused by the hitting sound related to the intermediate shaft 100.

本発明は前記実施形態に限定されるものではない。例えば、図5の第1参考形態において、かしめ加工を廃止し、筒状突起の外周に設けられた雄ねじと、止定部材70と本体部72の嵌合孔71の内周の雌ねじとをねじ結合させてもよい。
また、第1参考形態や第2参考形態において、緩衝体ユニット50Sの連結部52Sから、図2の第1実施形態と同じく、仮保持用の一対の係合腕(係合部)が延設されていてもよい。
The present invention is not limited to the above embodiment. For example, in the first reference form of FIG. 5, the caulking process is abolished, and the male screw provided on the outer periphery of the cylindrical projection and the female screw on the inner periphery of the fixing member 70 and the fitting hole 71 of the main body 72 are screwed. It may be combined.
Further, in the first reference form and the second reference form, a pair of temporarily holding engagement arms (engagement parts) are extended from the connection part 52S of the shock absorber unit 50S as in the first embodiment of FIG. May be.

その他、本発明は、特許請求の範囲記載の範囲内で種々の変更を施すことができる。   In addition, the present invention can be variously modified within the scope of the claims.

1;1S;1T…伸縮軸、10;10S;10T…内軸、10a…外周面、11…凹溝、12…軸直角方向孔、13;13S;13T…軸端面、14…筒状突起、14a…かしめ部、15…ねじ孔、20…外軸、20a…内周面、21…凹溝、30…転動体、30e…列の端部の転動体、40…ピン(止定部材)、41…ストッパ(ピンの端部)、50;50S…緩衝体ユニット、51;51S…緩衝体、51a…ピン挿通孔、51b…端面部、52;52S…連結部、53…係合腕(係合部)、60…ステアリング装置、70…止定部材、71…嵌合孔、72…本体部、73…ストッパ、80…ボルト(止定部材)、81…ねじ軸、82…頭部、100…インターミディエイトシャフト、R…軸直角方向、X…軸方向   DESCRIPTION OF SYMBOLS 1; 1S; 1T ... Telescopic axis | shaft, 10; 10S; 10T ... Inner axis | shaft, 10a ... Outer peripheral surface, 11 ... Dove groove, 12 ... Axis perpendicular direction hole, 13; 14a ... caulking portion, 15 ... screw hole, 20 ... outer shaft, 20a ... inner peripheral surface, 21 ... concave groove, 30 ... rolling element, 30e ... rolling element at the end of the row, 40 ... pin (fixing member), 41: Stopper (end of pin), 50; 50S ... Buffer body unit, 51; 51S ... Buffer body, 51a ... Pin insertion hole, 51b ... End face part, 52; 52S ... Connection part, 53 ... Engaging arm (engagement) , 60 ... steering device, 70 ... fixing member, 71 ... fitting hole, 72 ... main body, 73 ... stopper, 80 ... bolt (fixing member), 81 ... screw shaft, 82 ... head, 100 ... Intermediate shaft, R ... Axial direction, X ... Axial direction

Claims (4)

外周面に軸方向に延び軸直角方向に対向する一対の凹溝が形成された内軸と、
内周面に軸方向に延び軸直角方向に対向する一対の凹溝が形成された外軸と、
前記内軸および前記外軸の対応する凹溝間にそれぞれ配置され軸方向に並ぶ列をなす複数の転動体と、
前記外軸に対する前記内軸のストロークエンドにおいて対応する列の端部の転動体が前記内軸の対応する凹溝から脱落することをそれぞれ規制する一対のストッパと、
前記一対のストッパのそれぞれと対応する列の端部の転動体との間にそれぞれ介在する一対の緩衝体と前記一対の緩衝体間を連結する連結部とを一体に含む緩衝体ユニットと、 前記内軸の軸直角方向孔に挿通保持されたピンと、を備え、
前記ピンの一対の端部が前記一対の緩衝体のピン挿通孔にそれぞれ挿通された状態で、前記ピンが、前記緩衝体ユニットを前記内軸に止定する止定部材として機能し、
前記ピンの一対の端部が、前記一対のストッパを構成している伸縮軸。
An inner shaft formed with a pair of concave grooves extending in the axial direction on the outer peripheral surface and opposed in the direction perpendicular to the axis;
An outer shaft formed with a pair of concave grooves extending in the axial direction on the inner peripheral surface and facing in the direction perpendicular to the axis;
A plurality of rolling elements that are arranged between the corresponding concave grooves of the inner shaft and the outer shaft, respectively, and form rows arranged in the axial direction;
A pair of stoppers that respectively restrict the rolling elements at the end of the corresponding row at the stroke end of the inner shaft with respect to the outer shaft from dropping from the corresponding concave grooves of the inner shaft;
A cushion unit including integrally a connecting portion for connecting the pair of cushion and the pair of cushion interposed respectively between the rolling elements of the end of the row corresponding to each of the pair of stoppers, the A pin inserted and held in the axially perpendicular hole of the inner shaft ,
In a state where the pair of end portions of the pins are respectively inserted into the pin insertion holes of the pair of buffer bodies, the pin functions as a fixing member that fixes the buffer body unit to the inner shaft,
A telescopic shaft in which a pair of end portions of the pin constitutes the pair of stoppers .
請求項1において、前記緩衝体ユニットは、当該緩衝体ユニットを前記内軸に仮保持するように前記内軸に係合する係合部を含む伸縮軸。   2. The telescopic shaft according to claim 1, wherein the buffer unit includes an engaging portion that engages with the inner shaft so as to temporarily hold the buffer unit on the inner shaft. 請求項2において、前記連結部は、前記内軸の軸端面に対向し、
前記係合部は、前記連結部から延設されている伸縮軸。
In Claim 2, the connecting portion is opposed to the shaft end surface of the inner shaft,
The engaging portion is a telescopic shaft extending from the connecting portion.
請求項1からの何れか一項に記載の伸縮軸により構成されたインターミディエイトシャフトを含むステアリング装置。 A steering apparatus including an intermediate shaft constituted by the telescopic shaft according to any one of claims 1 to 3 .
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